Síntese e caracterização de análogos c-nucleosídeos indolizinilicos quaternizados em C-1’
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Universidade Federal do Rio de Janeiro
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C-nucleosides are a class of compounds essential for life. When phosphorylated, they are
responsible for processes such as transcription, translation of genetic information, and viral
replication. Over the years, they have become the target of research, and several nucleosides
have been introduced into clinical practice, with diverse applications, such as antiviral and
antitumor agents. The recent COVID-19 pandemic caused by the SARS-CoV-2 virus alerted
health agencies to the problems caused by viruses, and antivirals have thus become a major
focus of study. Remdesivir was the first C-nucleoside approved by the FDA and the first to be
approved for emergency treatment against COVID-19. Remdesivir's structure features a nitrile
group at the anomeric carbon, which studies have shown plays a crucial role in interrupting
the RNA-dependent RNA polymerase enzyme. Therefore, this work proposes the synthesis of
novel C-nucleosides with a quaternized indolizine scaffold at C1'. Six novel C-nucleosides
were synthesized in yields ranging from 29 to 78%, based on the construction of the
nucleobase with a preformed carbohydrate moiety, which was functionalized by the reaction
using perbenzyl riobonolactone. For the syntheses of the desired compounds, pyridinium and
quinolinium salts were used for in situ generation of the corresponding ylides, which then
reacted with the synthesized alkyne in a 1,3-dipolar reaction. The compounds were
characterized by 1D and 2D 1H and 13C NMR and by high-resolution spectrometry, which
showed high values for the H-3' hydrogen coupling constant, providing clues about the
conformation of the compounds.
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SILVA, Felipe Mudo. Síntese e caracterização de análogos c-nucleosídeos indolizinilicos quaternizados em C-1’. 2025. 89 f. Dissertação (Mestrado em Química) - Instituto de Química, Universidade Federal do Rio de Janeiro, Rio de Janeiro, 2025.
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